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Classification of Massively Parallel Computer Architectures

机译:大规模并行计算机体系结构的分类

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摘要

Faced with slowing performance and energy benefits of technology scaling, VLSI/Computer architectures have turned from parallel to massively parallel machines for personal and embedded applications in the form of multi and many core architectures. Additionally, in the pursuit of finding the sweet spot between engineering and computational efficiency, massively parallel Coarse Grain Reconfigurable Architectures(CRGAs) have been researched. While hese articles have been surveyed, they have not been rigorously classified to enable objective differentiation and comparison for performance, area and flexibility. In this paper, we extend the well known Skillicorn taxonomy to create new classes, present a scoring system to rate these classes on flexibility, and present equations for early estimation of area and configuration overheads. Furthermore, we use this extended classification scheme to classify and compare 25 different massively parallel architectures that covers most of the reported CGRAs and other well known multi and many core architectures.
机译:面对技术扩展带来的性能下降和能源优势下降,VLSI /计算机体系结构已从并行变为大规模并行并行的个人和嵌入式应用程序,形式为多核架构。此外,在寻找工程效率和计算效率之间的最佳结合点时,已经研究了大规模并行的粗粒度可重构体系结构(CRGA)。尽管已对这些文章进行了调查,但尚未对其进行严格分类以实现客观的区分和性能,面积和灵活性的比较。在本文中,我们扩展了著名的Skillicorn分类法,以创建新的类,提出了一种评分系统以对这些类的灵活性进行评分,并提出了用于早期估算面积和配置开销的方程式。此外,我们使用这种扩展的分类方案对25种不同的大规模并行体系结构进行分类和比较,这些体系结构涵盖了大多数已报告的CGRA和其他众所周知的多核和多核体系结构。

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